A 7.69 ENOB, $161\mu W$ SAR ADC in 28nm CMOS for Proton Sound Detectors.

Davide Turossi,Elia Arturo Vallicelli,Marcello De Matteis, Gennaro Di Meo, Fabio D'Ottavi,Andrea Baschirotto

Conference on PhD Research in Microelectronics and Electronics(2024)

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摘要
Imaging in proton-based radiotherapy can be advanced by the full characterisation of the thermoacoustic signal generated after the deposition of the proton beam energy into the absorber material. This paper presents an 8-bit 20M Samples Per Second fully differential Successive Approximation Register designed in 28nm CMOS for new generation Proton Sound Detectors. The specifications of the converter are determined by the low amplitude, high frequency and non-periodicity of the thermoacoustic signal, and by the electrical requirements of the detector acquisition chain. The proposed converter achieves, in nominal conditions, a Signal to Noise Ratio of 48.07, corresponding to an Equivalent Number Of Bits of 7.69, near ideal differential and integral non-linearity, and a total power consumption of $160.98\mu W$ . The circuit is designed to be robust to Process- Voltage-Temperature variations being able to achieve a worst-case-scenario Equivalent Number Of Bits of 7.42, and to mismatch suffering a maximum full-scale voltage reduction of $3LSB$ .
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关键词
28-nm CMOS,Equivalent Number Of Bits,Signal-to-noise,Power Consumption,Signal Amplitude,Low Amplitude,Absorbing Materials,Energy Deposition,Proton Beam,Nominal Conditions,Low-pass,Analog-to-digital Converter,Thermal Noise,Discrete Fourier Transform,Digital Signal Processing,Nuclear Imaging,Amplitude Range,Piezoelectric Transducer,Low-noise Amplifier,Charge Redistribution,Denoising Algorithm,Signal-to-noise Ratio Increases,Circuit Area,Voltage Loss,Variable Gain
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